Disentangling the different stages of the star formation process, in particular in the high-mass regime, is a challenge in astrophysics. Chemical clocks could help alleviate this problem, but their evolution strongly depends on many parameters, leading to degeneracy in the interpretation of the observational data. One of these uncertainties is the degree of CO depletion. We present here the first self-consistent magneto-hydrodynamic simulations of high-mass, star-forming regions at different scales, fully coupled with a nonequilibrium chemical network, which includes C-N-O bearing molecules. Depletion and desorption processes are treated time dependently. The results show that full CO depletion (i.e., all gas-phase CO frozen-out on the surf...
Context. Understanding the gas abundance distribution is essential when tracing star formation usin...
We study deuterium fractionation in two massive starless/early-stage cores, C1-N and C1-S, in Infrar...
We present new models of the deuterium chemistry in protoplanetary disks, including, for the first t...
Disentangling the different stages of the star formation process, in particular in the high-mass reg...
We report the detection of D2CO in a sample of starless dense cores, in which we previously measured...
UltraCompact HII regions are signposts of high mass star formation. Since high-mass star formation o...
In regions where stars form, variations in density and temperature can cause gas to freeze out onto ...
High levels of deuterium fractionation of $\rm N_2H^+$ (i.e., $\rm D_{frac}^{N_2H^+} = 0.1$) are oft...
In the low-mass regime, it is found that the gas-phase abundances of C-bearing molecules in cold sta...
Studying the physical and chemical properties of cold and dense molecular clouds is crucial for the ...
High levels of deuterium fraction in N$_2$H$^+$ are observed in some pre-stellar cores. Single-zone ...
Context. In cold (T 104 cm-3) interstellar clouds, molecules such as CO are significantly frozen ont...
Aims.We have measured the deuterium fractionation and the CO depletion factor (ratio between expect...
Context. In the dense and cold interiors of starless molecular cloud cores, a number of ch...
We have measured the deuterium fractionation (through the column density ratio N(N2D+)/N(N2H+)) and ...
Context. Understanding the gas abundance distribution is essential when tracing star formation usin...
We study deuterium fractionation in two massive starless/early-stage cores, C1-N and C1-S, in Infrar...
We present new models of the deuterium chemistry in protoplanetary disks, including, for the first t...
Disentangling the different stages of the star formation process, in particular in the high-mass reg...
We report the detection of D2CO in a sample of starless dense cores, in which we previously measured...
UltraCompact HII regions are signposts of high mass star formation. Since high-mass star formation o...
In regions where stars form, variations in density and temperature can cause gas to freeze out onto ...
High levels of deuterium fractionation of $\rm N_2H^+$ (i.e., $\rm D_{frac}^{N_2H^+} = 0.1$) are oft...
In the low-mass regime, it is found that the gas-phase abundances of C-bearing molecules in cold sta...
Studying the physical and chemical properties of cold and dense molecular clouds is crucial for the ...
High levels of deuterium fraction in N$_2$H$^+$ are observed in some pre-stellar cores. Single-zone ...
Context. In cold (T 104 cm-3) interstellar clouds, molecules such as CO are significantly frozen ont...
Aims.We have measured the deuterium fractionation and the CO depletion factor (ratio between expect...
Context. In the dense and cold interiors of starless molecular cloud cores, a number of ch...
We have measured the deuterium fractionation (through the column density ratio N(N2D+)/N(N2H+)) and ...
Context. Understanding the gas abundance distribution is essential when tracing star formation usin...
We study deuterium fractionation in two massive starless/early-stage cores, C1-N and C1-S, in Infrar...
We present new models of the deuterium chemistry in protoplanetary disks, including, for the first t...